BEng Hons Biomedical Engineering with Industrial Experience

QMUL-London UK

 

INTAKE: September

Program Overview

The BEng (Hons) Biomedical Engineering with Industrial Experience program at Queen Mary focuses on applying engineering expertise to medical and biological challenges. Students explore areas such as digital health, data science, biomaterials, clinical engineering, biomedical devices, and tissue engineering. The inclusion of a paid industrial placement year allows students to apply theoretical knowledge in real-world settings, enhancing their practical skills and employability. This experience offers insights into various sectors, including medical device companies, healthcare providers, and research institutions.

Curriculum: The program spans four years, with the third year dedicated to industrial experience. In the first two years, students build a strong foundation through modules covering engineering design, experimental design and practice, computational and mathematical modeling, materials engineering, and fluid mechanics and thermodynamics. The industrial placement year provides hands-on experience, allowing students to apply their academic learning in a professional environment. In the final year, students engage in advanced topics such as applied solid mechanics, instrumentation and measurements, materials for biomedical applications, cardiovascular fluids, and process control. The program culminates in an individual research project, enabling students to address real-world biomedical engineering challenges.

Research Focus: Queen Mary's School of Engineering and Materials Science is renowned for its cutting-edge research in areas like predictive modeling, regenerative medicine, and healthcare robotics. Students have opportunities to participate in groundbreaking research projects, such as 3D printing functional human tissue implants and developing organ-on-a-chip models for testing new medicines. This research-intensive environment fosters innovation and critical thinking, equipping students to contribute to advancements in biomedical engineering.

Industry Engagement: The program maintains strong connections with industry leaders and medical institutions. Students benefit from interactions with professionals from medical device companies, as well as clinicians from Barts and The London School of Medicine and Dentistry. These collaborations provide practical insights and enhance employability. The program is accredited by the Institute of Materials, Minerals and Mining (IOM3), ensuring that the degree meets the standards set by the Engineering Council in the UK Standard for Professional Engineering Competence (UK-SPEC). This accreditation signifies that graduates have the requisite knowledge and skills for professional engineering roles.

Global Perspective: Situated in London, a global hub for medical innovation and technology, Queen Mary offers a diverse and international learning environment. The program attracts students from around the world, fostering a multicultural academic community. This global perspective enriches the educational experience, preparing graduates to operate effectively in international and culturally diverse professional settings.

Pollster Education

Location

QMUL-London UK

Pollster Education

Score

IELTS: 6.5

Pollster Education

Tuition Fee

£ 29950

Undergraduate Entry Requirements:

  • Applicants should have successfully completed their secondary education with a minimum overall score of 80% or equivalent in their respective country's grading system.
  • English language proficiency is essential, and students are required to provide evidence of their English language skills through an approved language test.
    • IELTS: A minimum overall score of 6.5 with no individual component below 6.0.
    • TOEFL: A minimum overall score of 92, with at least  21 in Writing, 18 in Reading, 17 in Listening and 20 in Speaking.
    • PTE Academic: A minimum overall score of 71 overall and 65 in Writing, and 59 in Speaking ,Reading, Listening and.
  • Some programs may have specific subject prerequisites or additional requirements.

Students must provide:

  • academic marksheets & transcripts
  • letters of recommendation
  • a personal statement - SOP
  • passport
  • other supporting documents as required by the university.

It is important to note that meeting the minimum entry requirements does not guarantee admission, as the university considers factors such as availability of places and competition for the program. Additionally, some courses may have higher entry requirements or additional selection criteria, such as interviews or portfolio submissions.

Queen Mary University of London offers a range of scholarships and bursaries to its students. 

Queen Mary Principal's Scholars Program: A scholarship program for undergraduate students who have an offer of admission from Queen Mary University of London and have achieved exceptional academic grades. The scholarship covers full tuition fees for three years of study, as well as a £2,000 annual stipend for living expenses.

Queen Mary International Excellence Scholarships: A scholarship program for international undergraduate and postgraduate students who have an offer of admission from Queen Mary University of London and have demonstrated academic excellence. The scholarship covers full tuition fees for one year of study.

Queen Mary Law Scholarships: A scholarship program for undergraduate and postgraduate law students who have an offer of admission from Queen Mary University of London and have demonstrated academic excellence. The scholarship covers full or partial tuition fees, depending on the level of academic achievement.

Queen Mary Engineering and Materials Science Scholarships: A scholarship program for undergraduate and postgraduate students studying engineering or materials science who have an offer of admission from Queen Mary University of London and have demonstrated academic excellence. The scholarship covers full or partial tuition fees, depending on the level of academic achievement.

The BEng Hons Biomedical Engineering with Industrial Experience course at Queen Mary University of London provides students with a strong foundation in biomedical engineering principles and practical skills, combined with valuable industrial experience. Graduates of this program are well-equipped to pursue exciting career opportunities at the intersection of engineering and healthcare. 

Biomedical Engineer: Graduates can work as biomedical engineers, applying engineering principles and techniques to design and develop medical devices, equipment, and systems. They may be involved in the design of prosthetics, imaging systems, diagnostic tools, or rehabilitation devices, ensuring their safety, efficacy, and compliance with regulatory standards.

Clinical Engineer: Graduates can pursue careers as clinical engineers, working closely with healthcare professionals to optimize the use of medical technology in clinical settings. They may be responsible for the maintenance, calibration, and safety of medical equipment, as well as the integration of technology in healthcare environments.

Medical Device Developer: Graduates can enter the field of medical device development, working for companies that design and manufacture medical devices. They may contribute to the design, testing, and improvement of medical devices, ensuring they meet the needs of patients and healthcare providers.

Research and Development Engineer: Graduates can work in research and development (R&D) roles within academic institutions, medical device companies, or research organizations. They may contribute to cutting-edge research projects, exploring new technologies, materials, and techniques to advance the field of biomedical engineering.

Regulatory Affairs Specialist: Graduates can pursue careers in regulatory affairs, ensuring that medical devices and technologies comply with national and international regulations and standards. They may be involved in preparing documentation, conducting risk assessments, and navigating the regulatory processes involved in bringing new medical products to market.

Quality Assurance Engineer: Graduates can work in quality assurance roles, focusing on maintaining and improving the quality and safety of medical devices and systems. They may develop and implement quality control processes, conduct audits, and ensure compliance with industry standards and regulations.

Biomechanical Engineer: Graduates can specialize in the field of biomechanics, applying engineering principles to study the mechanics of biological systems. They may work on projects related to prosthetics, orthotics, and biomechanical analysis, aiming to enhance mobility and improve the quality of life for individuals with physical impairments.

Healthcare Technology Manager: Graduates can work in managerial roles within healthcare organizations, overseeing the implementation and management of medical technologies and systems. They may be responsible for evaluating new technologies, training staff, and ensuring the effective and safe use of medical equipment.

Further Studies and Professional Development: The BEng Hons Biomedical Engineering with Industrial Experience program provides a solid foundation for further academic studies or professional development in the field of biomedical engineering or related disciplines. Graduates can pursue advanced degrees such as a Master's or Ph.D. in Biomedical Engineering or undertake specialized training and certifications to enhance their expertise.


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